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Virulence pattern of circulating aeromonads isolated from farmed Nile tilapia in Tanzania and novel antibiotic free attenuation of Aeromonas hydrophila strain TZR7-2018

机译:从坦桑尼亚养殖的尼罗罗非鱼分离的循环机场循环的毒力模式,新鲜的抗生素自由衰减Aeromonas患者植物菌株TZR7-2018

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Aeromonads are gram-negative, rod-shaped, facultative anaerobes bacteria known to cause motile aeromonads septicemia diseases (MAS) in warm freshwater farmed fish. Outbreaks are associated with pathogenicity of aeromonads in fish which is partly contributed by virulence characteristics of the etiological agent. The objective of this study was to assess the virulence characteristics of the previously isolated and identified aeromonads, and attenuate potential Aeromonas hydrophila strain TZR7-2018 to serve as local vaccine candidate. Six virulence genes and other virulence characteristics were molecularly and phenotypically assessed both using in-vitro and in-vivo approaches. Attenuation of A. hydrophila parent strain TZR7-2018sup+/sup was performed by passaging through thermal continuous sub-culturing 40 times in Tryptic soy agar (TSA). Bacterin was prepared by formalin inactivation from the same parent strain. Humoral responses were assayed using quantitative serological agglutination test (qSAT) while protective efficacy was measured through relative percent survival (RPS). A total 240 Nile tilapia fingerlings with an average weight of 8.1?±?0.4?g were used in all in-vivo studies. The presence of aerolysin ( aer ), cytotoxic enterotoxin ( act ), elastase ( ahy ), haemolysin ( hly ), serine ( ser ) and polar flagella ( fla ) genes were determined using PCR. Out of 201 isolates, 75.1 % (151/201) of the aeromonads possessed virulence genes (120= A. hydrophila and 31= Aeromonas veronii) . The virulence gene pattern of aer/hly/fla was the most prominent with the prevalence of 12.6 %. The attenuated strain TZR7-2018sup?/sup showed reduced: colon size, multiplication rate, cell size and loss in; haemolysis, motility and capsule. Humoral responses increased gradually and reached maximum at day 28 in both attenuated and bacterin formulation given through intraperitoneal (IP) injection and immersion (IM). A RPS of 82.3 %, 71.4 % and 85.1 %, were recorded to the attenuated vaccine given through IP and IM and bacterin provided through IP respectively. Therefore the attenuated strain TZR7-2018sup?/sup obtained through thermal continuous subculture technique and the bacterin proved to be efficacious and can serve as vaccine candidate.
机译:Aeromonads是革兰氏阴性的,棒状,众所周知的兼容性厌氧菌细菌,导致温暖的淡水养殖的败血症疾病(MAS)。爆发与鱼类的致病性有关,其部分是由病因的毒力特征贡献。本研究的目的是评估先前分离和鉴定的航空组织的毒力特征,并衰减潜在的Aeromonas疏水菌菌株TZR7-2018作为局部疫苗候选者。六种毒力基因和其他毒力特征是分子的,并在体外和体内方法中进行表型评估。通过在胰蛋白酶大豆琼脂(TSA)中的热连续亚培养40次通过热连续亚培养来进行A.疏水层母体菌株TZR7-2018 + 。通过来自相同亲本菌株的福尔马林灭活来制备细菌。使用定量血清学凝集试验(QSAT)测定液体反应,而通过相对百分比存活(RPS)测量保护效果。共240个尼罗基亚罗非鱼的指针,平均重量为8.1?±0.4克,在所有体内研究中使用。使用PCR测定Aerolysin(AEL),细胞毒肠毒素(ACT),弹性蛋白酶(AHY),血清蛋白(HLY),丝氨酸(SER)和极性鞭毛(FLA)基因的存在。在201分离株中,75.1%(151/201)的航空组织具有毒力基因(120 = A.疏水层和31 = Aeromonas Veronii)。 AER / HID / FLA的毒力基因图案是最突出的,患病率为12.6%。衰减菌株TZR7-2018 αs?表现出降低:结肠大小,倍增率,细胞尺寸和损失;溶血,运动和胶囊。通过腹膜内(IP)注射和浸渍(IM)给予衰减和细菌配方,体液反应在第28天逐渐增加并达到最大值。通过IP和IM和IP的IM和IM和细菌分别记录82.3%,71.4%和85.1%的rps。因此,通过热连续亚培养技术获得的减毒菌株TZR7-2018 被证明是有效的,可用作疫苗候选的疫苗。

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